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基于核基因和线粒体序列数据推断的透翅蛾科蛾类(昆虫纲:鳞翅目)的高级系统发育以及幼虫用于化学防御的表皮腔的进化

Higher phylogeny of zygaenid moths (Insecta: Lepidoptera) inferred from nuclear and mitochondrial sequence data and the evolution of larval cuticular cavities for chemical defence.

作者信息

Niehuis Oliver, Yen Shen-Horn, Naumann Clas M, Misof Bernhard

机构信息

Alexander Koenig Research Institute and Museum of Zoology, Bonn, Germany.

出版信息

Mol Phylogenet Evol. 2006 Jun;39(3):812-29. doi: 10.1016/j.ympev.2006.01.007. Epub 2006 Feb 17.

Abstract

Zygaenid moths are capable of releasing hydrogen cyanide in their defense by enzymatic break-down of cyanoglucosides, but only larvae of chalcosiine and zygaenine moths store cyanogenic compounds in cuticular cavities and thus are able to discharge defense droplets, which effectively deter potential predators. A previously proposed phylogeny of Zygaenidae hypothesized a sister group relationship of chalcosiine and zygaenine moths because of their similar larval defense system. Not all chalcosiine taxa possess cuticular cavities, however, and a comparable defense mechanism has been reported in larvae of the zygaenoid family Heterogynidae. Considering sequence data of seven molecular loci, the present study estimates the posterior probability of phylogenetic hypotheses explaining the occurrence of larval cuticular cavities. The molecular data confirm the previous exclusion of Himantopteridae from Zygaenidae and suggest their close affinity to Somabrachyidae. The sequence data also corroborate the recently proposed exclusion of the Phaudinae from the Zygaenidae, because this subfamily is recovered in a reasonably well supported species cluster consisting of members of the families Lacturidae, Limacodidae, Himantopteridae, and Somabrachyidae. We consequently agree to raise Phaudinae to family rank. Within Zygaenidae, the subfamilies Callizygaeninae, Chalcosiinae, and Procridinae most likely constitute a monophyletic group, which is sister to the Zygaeninae. Our results imply that cuticular cavities were probably present in the larvae of the most recent common ancestor of Zygaenidae. Heterogynidae cannot be confirmed as sister taxon to this family, but appear at the very first split of the Zygaenoidea, although with poor support. The specific pattern of taxa in the molecular phylogeny showing larval cuticular cavities opens the possibility that these structures could have been already present in the most recent common ancestor of the Zygaenoidea.

摘要

斑蛾能够通过氰苷的酶促分解来释放氰化氢进行自我防御,但只有铜斑蛾亚科和斑蛾亚科的幼虫会将含氰化合物储存在表皮腔中,从而能够排出防御液滴,有效地威慑潜在的捕食者。先前提出的斑蛾科系统发育假说认为,铜斑蛾亚科和斑蛾亚科的蛾类是姐妹群关系,因为它们的幼虫防御系统相似。然而,并非所有铜斑蛾亚科类群都具有表皮腔,而且在异斑蛾科的幼虫中也报道了类似的防御机制。本研究考虑了七个分子位点的序列数据,估计了解释幼虫表皮腔出现的系统发育假说的后验概率。分子数据证实了之前将燕蛾科排除在斑蛾科之外的观点,并表明它们与短臂蛾科关系密切。序列数据还证实了最近提出的将拟斑蛾亚科排除在斑蛾科之外的观点,因为这个亚科出现在一个得到合理有力支持的物种集群中,该集群由尺蛾科、刺蛾科、燕蛾科和短臂蛾科的成员组成。因此,我们同意将拟斑蛾亚科提升为科级分类单元。在斑蛾科内,Callizygaeninae亚科、铜斑蛾亚科和Procridinae亚科很可能构成一个单系群,是斑蛾亚科的姐妹群。我们的结果表明,表皮腔可能存在于斑蛾科最近共同祖先的幼虫中。不能确定异斑蛾科是该科的姐妹分类单元,但它们似乎出现在斑蛾总科的最初分支处,尽管支持力度较弱。分子系统发育中显示幼虫表皮腔的分类单元的特定模式表明,这些结构可能已经存在于斑蛾总科最近的共同祖先中。

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